Preconception, Prenatal and Postnatal PM2.5 Exposure and Neurodevelopmental Disorder Risk among Medicaid Recipients

Abstract Evidence linking ambient fine particulate matter (PM2.5) exposure to childhood neurodevelopmental disorders (NDDs) remains mixed. We conducted a cohort study (2001–2013) of 1,547,244 Medicaid-enrolled mother-child pairs to assess associations between zip-code–level PM2.5 exposure during preconception (12-week), prenatal (37-week), and postnatal (3-year) periods and children’s NDD risk. Cox proportional hazards models estimated risks of autism spectrum disorder (ASD), attention-deficit/hyperactivity disorder (ADHD), learning difficulty (LD), speech/language disorder, developmental coordination disorder (DCD), intellectual disability, and behavioral disorder, adjusting for demographics, meteorological characteristics, and area-level socioeconomic indicators. Distributed lag models assessed critical exposure windows and cumulative effects. A 10 μg/m3 increase in cumulative prenatal PM2.5 exposure was associated with higher ASD risk (Hazard ratio (HR):1.17; 95%CI:1.00,1.37). A critical exposure window for ASD existed during gestational weeks 23–31 (HR:1.09 95%CI:[1.02,1.17]). Cumulative prenatal PM2.5 exposure was associated with increased ID risk among Hispanic individuals (HR:1.57 95%CI:[1.02,2.43]) but not among other races/ethnicities. Postnatal PM2.5 exposure was associated with increased ADHD risk (HR:1.17 95%CI:[0.94,1.46]) at age 0 years and DCD risk (HR:1.72 95%CI:[0.97,3.07]) at age 1 year. No associations between PM2.5 exposure and other NDDs were found. Prenatal and postnatal PM2.5 exposure may increase the risk of some NDDs among low-income U.S. children.

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Publication Details

Journal
Environmental Science & Technology
Published
2026-09-29
DOI
https://doi.org/10.1021/acs.est.6c03766
Primary Topic
Air Quality and Health Impacts
Type
article
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article

Preconception, Prenatal and Postnatal PM2.5 Exposure and Neurodevelopmental Disorder Risk among Medicaid Recipients

Sonia Hernández–Dı́az, Christopher J. McDougle, Krista F. Huybrechts, Yaguang Wei et al.
Environmental Science & Technology
Air Quality and Health Impacts
article

Preconception, Prenatal and Postnatal PM2.5 Exposure and Neurodevelopmental Disorder Risk among Medicaid Recipients

Sonia Hernández–Dı́az, Christopher J. McDougle, Krista F. Huybrechts, Yaguang Wei, Hayon Michelle Choi, Xinye Qiu, Antonella Zanobetti, Wanyu Huang, Stefania Papatheodorou, Evgenia Papatheodorou, Matthew S. Shupler, Joel Schwartz, Michael Leung, Brent Coull, Marc Weisskopf
article en

Abstract

Abstract Evidence linking ambient fine particulate matter (PM2.5) exposure to childhood neurodevelopmental disorders (NDDs) remains mixed. We conducted a cohort study (2001–2013) of 1,547,244 Medicaid-enrolled mother-child pairs to assess associations between zip-code–level PM2.5 exposure during preconception (12-week), prenatal (37-week), and postnatal (3-year) periods and children’s NDD risk. Cox proportional hazards models estimated risks of autism spectrum disorder (ASD), attention-deficit/hyperactivity disorder (ADHD), learning difficulty (LD), speech/language disorder, developmental coordination disorder (DCD), intellectual disability, and behavioral disorder, adjusting for demographics, meteorological characteristics, and area-level socioeconomic indicators. Distributed lag models assessed critical exposure windows and cumulative effects. A 10 μg/m3 increase in cumulative prenatal PM2.5 exposure was associated with higher ASD risk (Hazard ratio (HR):1.17; 95%CI:1.00,1.37). A critical exposure window for ASD existed during gestational weeks 23–31 (HR:1.09 95%CI:[1.02,1.17]). Cumulative prenatal PM2.5 exposure was associated with increased ID risk among Hispanic individuals (HR:1.57 95%CI:[1.02,2.43]) but not among other races/ethnicities. Postnatal PM2.5 exposure was associated with increased ADHD risk (HR:1.17 95%CI:[0.94,1.46]) at age 0 years and DCD risk (HR:1.72 95%CI:[0.97,3.07]) at age 1 year. No associations between PM2.5 exposure and other NDDs were found. Prenatal and postnatal PM2.5 exposure may increase the risk of some NDDs among low-income U.S. children.

Environmental Science & Technology
Rutgers, The State University of New Jersey (US), Brigham and Women's Hospital (US), Beth Israel Deaconess Medical Center (US), Harvard University (US), Massachusetts General Hospital (US), University Hospital of Ioannina (GR), Icahn School of Medicine at Mount Sinai (US)
No poverty
Openalex Percentile: Top 12%
Air Quality and Health Impacts
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